发表状态 | 已发表Published |
题名 | Mass transport/diffusion and surface reaction process with Lattice Boltzmann |
作者 | |
发表日期 | 2011 |
发表期刊 | Communications in Computational Physics
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ISSN/eISSN | 1815-2406 |
卷号 | 9期号:5页码:1362-1374 |
摘要 | Multi-component flow with chemical reactions is a common problem in different industrial applications: the mixing chamber of a reaction injection molding (RIM) machine; the dynamics of diesel soot particles interacting with a porous-ceramic particulate filter; reactive transport in porous media; bio-chemical processes involving enzyme-catalyzed kinetics. In all these cases, mass diffusion/convection and wall or volume chemical interactions among components play an important role. In the present paper we underline the importance of diffusion/convection/reaction mechanisms in bio-chemical processes using the Lattice Boltzmann (LB) technique. The bio-application where we studied diffusion/convection/reaction mechanisms is the quorum-sensing pathway for the bio-synthesis of the AI-2, a molecule that allows the bacteria to launch a coordinated attack on a host immune system (see [9,10] for more details of the bio-application). The overall goal is to create a micro-device to screen potential drugs that inhibit AI-2 bio-synthesis. The Michaelis-Menten saturation kinetic model is implemented at the reactive surface and the results are shown in terms of two dimensionless numbers: Damkohler (Da) and Peclet (Pe) number. For high Pe number a small conversion of reactants into products is obtained at the reactive surface, but the overall flux of products is high; moreover, a fast saturation of the conversion of reactants to products is obtained for high Da numbers. The trade-off for setting the Pe and Da numbers depends on the specific application and the technologies used in the micro-device (e.g., sensitivity of the detector, cost of reactants). © 2011 Global-Science Press. |
关键词 | Diffusion-reaction Lattice Boltzmann Multi-component |
DOI | 10.4208/cicp.021009.241210s |
URL | 查看来源 |
收录类别 | SCIE ; CPCI-S |
语种 | 英语English |
WOS研究方向 | Physics |
WOS类目 | Physics, Mathematical |
WOS记录号 | WOS:000292061900022 |
Scopus入藏号 | 2-s2.0-79951971856 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | https://repository.uic.edu.cn/handle/39GCC9TT/10651 |
专题 | 个人在本单位外知识产出 |
通讯作者 | De Prisco, Giuseppe |
作者单位 | 1.Exa Corporation,55 Network Drive,Burlington, MA 01773,United States 2.Ingrain Inc.,3733 Westheimer Road,Houston, TX 77027,United States |
推荐引用方式 GB/T 7714 | De Prisco, Giuseppe,Shan, Xiaowen. Mass transport/diffusion and surface reaction process with Lattice Boltzmann[J]. Communications in Computational Physics, 2011, 9(5): 1362-1374. |
APA | De Prisco, Giuseppe, & Shan, Xiaowen. (2011). Mass transport/diffusion and surface reaction process with Lattice Boltzmann. Communications in Computational Physics, 9(5), 1362-1374. |
MLA | De Prisco, Giuseppe,et al."Mass transport/diffusion and surface reaction process with Lattice Boltzmann". Communications in Computational Physics 9.5(2011): 1362-1374. |
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